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拉伸磷脂/胆固醇双层膜中孔形成的分子动力学模拟

Molecular dynamics simulations of pore formation in stretched phospholipid/cholesterol bilayers.

作者信息

Shigematsu Taiki, Koshiyama Kenichiro, Wada Shigeo

机构信息

Department of Mechanical Science & Bioengineering, Graduate School of Engineering Science, Osaka University, Machikaneyamacho 1-3, Toyonaka, Osaka 560-8531, Japan.

Department of Mechanical Science & Bioengineering, Graduate School of Engineering Science, Osaka University, Machikaneyamacho 1-3, Toyonaka, Osaka 560-8531, Japan.

出版信息

Chem Phys Lipids. 2014 Oct;183:43-9. doi: 10.1016/j.chemphyslip.2014.05.005. Epub 2014 May 23.

Abstract

Molecular dynamics (MD) simulations of pore formation in stretched dipalmitoylphosphatidylcholine (DPPC) bilayers containing different concentrations of cholesterol (0, 20, 40, and 60 mol%) are presented. The stretched bilayers were simulated by constant NPZA||T MD simulations with various constant areas. The effects of the cholesterol concentration on pore formation are examined in terms of the critical areal strain where the pore is formed, the processes of pore formation, and the change in molecular orientation of the DPPC molecules by analyzing the order parameters and radial distribution functions of the DPPC molecules. With increasing cholesterol concentration, the critical areal strain initially increases, peaks at 40 mol%, and then decreases, which agrees well with the available experimental data. For the bilayers containing cholesterol, DPPC molecules become disordered at low areal strains, whereas the order slightly increases when the areal strain exceeds a certain value depending on the cholesterol concentration. For 40 mol% cholesterol, the two monolayers in the bilayer interpenetrate under high areal strains, inducing an increase of the order parameters and the peak positions of the radial distribution function compared with their states at low areal strains, indicating the formation of an interdigitated gel-phase-like structure. The transient increasing of the order of the molecular orientations may inhibit water penetration into the bilayer, resulting in increased critical areal strain in the phospholipid/cholesterol bilayers.

摘要

本文展示了对含有不同胆固醇浓度(0、20、40和60摩尔%)的拉伸二棕榈酰磷脂酰胆碱(DPPC)双层膜中孔形成的分子动力学(MD)模拟。通过具有不同恒定面积的恒定NPZA||T MD模拟对拉伸双层膜进行模拟。通过分析DPPC分子的序参量和径向分布函数,从形成孔的临界面积应变、孔形成过程以及DPPC分子的分子取向变化等方面研究了胆固醇浓度对孔形成的影响。随着胆固醇浓度的增加,临界面积应变最初增加,在40摩尔%时达到峰值,然后降低,这与现有实验数据吻合良好。对于含有胆固醇的双层膜,DPPC分子在低面积应变下变得无序,而当面积应变超过取决于胆固醇浓度的特定值时,有序度略有增加。对于40摩尔%的胆固醇,双层膜中的两个单层在高面积应变下相互渗透,与低面积应变状态相比,导致序参量和径向分布函数的峰值位置增加,表明形成了类似交错凝胶相的结构。分子取向有序度的短暂增加可能会抑制水渗透到双层膜中,导致磷脂/胆固醇双层膜中的临界面积应变增加。

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